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Hypertension Research : Official Journal of the Japanese Society of Hypertension|June 21, 2022
Clinical effect of nonsteroidal mineralocorticoid receptor (MR) antagonists in the treatment of diabetic kidney disease: expectations as a new therapeutic strategyAtsuhisa Sato, Mitsuhiro Nishimoto
Hypertension Research : Official Journal of the Japanese Society of Hypertension|May 20, 2026
Aldosterone synthase inhibitors: a new option for antihypertensive, cardio-renal protectionAtsuhisa Sato, Mitsuhiro Nishimoto
Hypertension Research : Official Journal of the Japanese Society of Hypertension|March 26, 2025
Real-world use of finerenone in patients with chronic kidney disease and type 2 diabetes based on large-scale clinical studies: FIDELIO-DKD and FIGARO-DKDAtsuhisa Sato, Mitsuhiro Nishimoto
American Journal of Physiology. Renal Physiology|December 19, 2014
Renal mechanisms of salt-sensitive hypertension: contribution of two steroid receptor-associated pathwaysMitsuhiro Nishimoto, Toshiro Fujita
Cell Calcium|October 15, 2013
FRET-based sensor analysis reveals caveolae are spatially distinct Ca2+ stores in endothelial cellsMasashi Isshiki, Mitsuhiro Nishimoto, Risuke Mizuno, et al.
Hypertension Research : Official Journal of the Japanese Society of Hypertension|April 27, 2018
Stromal interaction molecule 1 modulates blood pressure via NO production in vascular endothelial cellsMitsuhiro Nishimoto, Risuke Mizuno, Toshiro Fujita, et al.
Lymphatic Research and Biology|June 20, 2015
A High-Salt Diet Differentially Modulates Mechanical Activity of Afferent and Efferent Collecting Lymphatics in Murine Iliac Lymph NodesRisuke Mizuno, Masashi Isshiki, Nobuyuki Ono, et al.
Lymphatic Research and Biology|December 20, 2014
A high salt diet alters pressure-induced mechanical activity of the rat lymphatics with enhancement of myogenic characteristicsRisuke Mizuno, Masashi Isshiki, Nobuyuki Ono, et al.
Hypertension (Dallas, Tex. : 1979)|March 28, 2024
Salt-Sensitive Hypertension and the KidneyMitsuhiro Nishimoto, Karen A Griffin, Brandi M Wynne, et al.
International Journal of Molecular Sciences|June 26, 2020
PGI2 Analog Attenuates Salt-Induced Renal Injury through the Inhibition of Inflammation and Rac1-MR ActivationDaigoro Hirohama, Wakako Kawarazaki, Mitsuhiro Nishimoto, et al.
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